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Real-time control strategy for simultaneous nitrogen and phosphorus removal using aerobic granular sludge

机译:利用好氧颗粒污泥同时去除氮和磷的实时控制策略

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摘要

To achieve stable and simultaneous removal of nitrogen and phosphorus using aerobic granular sludge in a sequencing batch reactor, a real-time control strategy was established, where time derivatives of electric conductivity (EC) and pH were monitored to facilitate the determinations of ends of phosphate release, nitrification and denitrification as well as corresponding optimum time-lengths of anaerobic, oxic, and anoxic phases in treatment cycles. Although biomass concentration in a reactor drastically fluctuated at the startup period because of very short sludge settling time for the formation of aerobic granular sludge, cycle length for proper treatment was automatically adjusted in this control system. Even when characteristics of influent wastewater markedly fluctuated, stable nitrogen and phosphorus removal was successfully attained both before and at pseudo-steady-state. Effluent concentrations of NH4-N, NOx-N and PO4-P were always lower than 0.3 mg/L. On the other hand, when time lengths of the anaerobic/oxic/anoxic phases were fixed, stable nitrogen and phosphorus removal was not accomplished. Therefore, it is clear that the designed control system is very effective to obtain stable treatment performance in simultaneous nitrogen and phosphorus removal by aerobic granular sludge.
机译:为了在顺序分批反应器中使用好氧颗粒污泥稳定而同时地去除氮和磷,建立了实时控制策略,其中监测电导率(EC)和pH的时间导数,以方便确定磷酸盐的末端在处理周期中释放,硝化和反硝化以及相应的厌氧,有氧和无氧阶段的最佳时间长度。尽管由于形成好氧颗粒污泥的污泥沉降时间非常短,反应器中的生物质浓度在启动阶段会急剧波动,但在此控制系统中会自动调整适当处理的周期长度。即使当进水废水的特性发生明显波动时,在稳态之前和拟稳态下也能成功实现稳定的氮和磷去除。 NH4-N,NOx-N和PO4-P的废水浓度始终低于0.3 mg / L。另一方面,当厌氧/有氧/缺氧相的时间长度固定时,不能实现稳定的氮和磷去除。因此,很明显,所设计的控制系统对于通过需氧颗粒污泥同时去除氮和磷非常有效,以获得稳定的处理性能。

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